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估算土壤中磷向地表径流和地下排水的释放量。

Approximating phosphorus release from soils to surface runoff and subsurface drainage.

作者信息

McDowell R W, Sharpley A N

机构信息

USDA-ARS, Pasture Systems and Watershed Management Research Unit, Curtin Road, Building 3702, University Park, PA 16802-3702, USA.

出版信息

J Environ Qual. 2001 Mar-Apr;30(2):508-20. doi: 10.2134/jeq2001.302508x.

Abstract

Phosphorus application in excess of crop needs has increased the concentration of P in surface soil and runoff and led many states to develop P-based nutrient management strategies. However, insufficient data are available relating P in surface soil, surface runoff, and subsurface drainage to develop sound guidelines. Thus, we investigated P release from the surface (0-5 cm depth) of a Denbigh silt loam from Devon, U.K. (30-160 mg kg-1 Olsen P) and Alvin, Berks, Calvin, and Watson soils from Pennsylvania (10-763 mg kg-1 Mehlich-3 P) in relation to the concentration of P in surface runoff and subsurface drainage. A change point, where the slopes of two linear relationships between water- or CaCl2-extractable soil P and soil test phosphorus (STP) (Olsen or Mehlich-3) meet, was evident for the Denbigh at 33 to 36 mg kg-1 Olsen P, and the Alvin and Berks soils at 185 to 190 mg Mehlich-3 P kg-1. Similar change points were also observed when STP was related to the P concentration of surface runoff (185 mg kg-1) and subsurface drainage (193 mg kg-1). The use of water and CaCl2 extraction of surface soil is suggested to estimate surface runoff P (r2 of 0.92 for UK and 0.86 for PA soils) and subsurface drainage P (r2 of 0.82 for UK and 0.88 for PA soils), and to determine a change point in STP, which may be used in support of agricultural and environmental P management.

摘要

过量施用磷肥已导致表层土壤和径流中的磷浓度升高,促使许多州制定基于磷的养分管理策略。然而,关于表层土壤、地表径流和地下排水中的磷,目前尚无足够数据来制定合理的指导方针。因此,我们研究了英国德文郡登比格粉质壤土(Olsen磷含量为30 - 160毫克/千克)以及宾夕法尼亚州阿尔文、伯克、卡尔文和沃森土壤(Mehlich - 3磷含量为10 - 763毫克/千克)表层(0 - 5厘米深度)的磷释放情况,及其与地表径流和地下排水中磷浓度的关系。对于登比格土壤,当Olsen磷含量达到33至36毫克/千克时,以及对于阿尔文和伯克土壤,当Mehlich - 3磷含量达到185至190毫克/千克时,水或氯化钙可提取土壤磷与土壤有效磷(STP,Olsen法或Mehlich - 3法)之间的两个线性关系的斜率相交处出现了一个变化点。当STP与地表径流磷浓度(185毫克/千克)和地下排水磷浓度(193毫克/千克)相关时,也观察到了类似的变化点。建议采用水和氯化钙提取表层土壤的方法来估算地表径流磷(英国土壤的r²为0.92,宾夕法尼亚州土壤的r²为0.86)和地下排水磷(英国土壤的r²为0.82,宾夕法尼亚州土壤的r²为0.88),并确定STP的变化点,这可用于支持农业和环境磷管理。

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